Peter Loutzenhiser

Georgia Institute of Technology

Associate Professor

George W. Woodruff School of Mechanical Engineering

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Research Area

#Materials science#Thermodynamics#Energy storage#Thermal#Thermal energy storage#Brayton cycle#Solar simulator#Syngas#Thermogravimetry#Thermochemical cycle

SCIE paper information

Papers relevant to ‘Materials science’: 16

Research performance of SCIE papers matching with ‘Materials science’

Citations of SCIE papers SCIE papers 020k40k60k80k100k02004006008001k1.2k1.4k1.6k

*Papers published between 2014 and 2020 were selected, and the citation number was determined by bing.com.

  • Solar electricity via an Air Brayton cycle with an integrated two-step thermochemical cycle for heat storage based on Co3O4/CoO redox reactions: Thermodynamic analysis

    2015/08 SOLAR ENERGY 3.685 Impact Factor 64 citations

    Andrew J. Schrader, Alexander P. Muroyama, Peter G. Loutzenhiser

    DOI : 10.1016/J.SOLENER.2015.05.045

  • A review of the state-of-the-art in solar-driven gasification processes with carbonaceous materials

    2017/11 SOLAR ENERGY 4.374 Impact Factor 25 citations

    Peter G. Loutzenhiser, Alexander P. Muroyama

    DOI : 10.1016/J.SOLENER.2017.05.008

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Papers for author ‘Peter Loutzenhiser’: 18

Number of published SCIE papers by year

024682014201520162017201820192020
H-index 8
Number of NCS papers 0

*Papers published between 2014 and 2020 were selected, and the citation number was determined by bing.com.

  • Characterization of a 6 kW high-flux solar simulator with an array of xenon arc lamps capable of concentrations of nearly 5000 suns.

    2015/12 REVIEW OF SCIENTIFIC INSTRUMENTS 1.336 Impact Factor 70 citations

    Robert J. Gill, H. Evan Bush, Philipp Haueter, Peter G. Loutzenhiser

    DOI : 10.1063/1.4936976

  • Solar electricity via an Air Brayton cycle with an integrated two-step thermochemical cycle for heat storage based on Co3O4/CoO redox reactions: Thermodynamic analysis

    2015/08 SOLAR ENERGY 3.685 Impact Factor 64 citations

    Andrew J. Schrader, Alexander P. Muroyama, Peter G. Loutzenhiser

    DOI : 10.1016/J.SOLENER.2015.05.045

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